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1.
ACS Nano ; 11(3): 2410-2419, 2017 03 28.
Article in English | MEDLINE | ID: mdl-28094987

ABSTRACT

Crystalline porous materials have been investigated for development of important applications in molecular storage, separations, and catalysis. The potential of protein crystals is increasing as they become better understood. Protein crystals have been regarded as porous materials because they present highly ordered 3D arrangements of protein molecules with high porosity and wide range of pore sizes. However, it remains difficult to functionalize protein crystals in living cells. Here, we report that polyhedra, a natural crystalline protein assembly of polyhedrin monomer (PhM) produced in insect cells infected by cypovirus, can be engineered to extend porous networks by deleting selected amino acid residues located on the intermolecular contact region of PhM. The adsorption rates and quantities of fluorescent dyes stored within the mutant crystals are increased relative to those of the wild-type polyhedra crystal (WTPhC) under both in vitro and in vivo conditions. These results provide a strategy for designing self-assembled protein materials with applications in molecular recognition and storage of exogenous substances in living cell as well as an entry point for development of bioorthogonal chemistry and in vivo crystal structure analysis.


Subject(s)
Protein Engineering , Reoviridae/chemistry , Spodoptera/virology , Viral Proteins/chemistry , Adsorption , Animals , Fluorescent Dyes/chemistry , Models, Molecular , Molecular Structure , Particle Size , Porosity , Spodoptera/cytology , Surface Properties
2.
Chem Commun (Camb) ; 52(24): 4545-8, 2016 Mar 25.
Article in English | MEDLINE | ID: mdl-26940021

ABSTRACT

Photoactivatable CO releasing protein crystals were developed by immobilization of Mn carbonyl complexes in polyhedral crystals, which are spontaneously formed in insect cells. The photoactivatable CO release from the engineered protein crystals activates nuclear factor kappa B (NF-κB) upon stimulation by visible light irradiation with suppression of cytotoxicity of the Mn complex.


Subject(s)
Carbon Monoxide/chemistry , NF-kappa B/metabolism , Proteins/chemistry , Animals , Spodoptera
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